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Is sheer thenardite attack impotent compared with cyclic conversion of thenardite-mirabilite mechanism in laboratory simulation tests?

机译:在实验室模拟测试中,纯粹的芒硝攻击与循环转化芒硝-芒硝机理的作用相比,是否有力?

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The precipitation of mirabilite during the wetting stage of a cyclic total immersion test has widely been implicated as the main damage mechanism of sodium sulfate. We, however, hypothesized that the damage contribution from thenardite cannot be discounted in laboratory tests. To verify the supposition, a series of laboratory experiments was undertaken by subjecting three types of rocks to the sodium sulfate attack. To unambiguously demonstrate the potency of thenardite, in addition to cyclic total immersion tests, continuous partial immersion tests were also performed under different environmental conditions, which allowed either sheer thenardite precipitation or reversible thenardite-mirabilite conversion. Although rock breakdown occurred only during immersion, the results clearly indicated that thenardite alone could induce significant damage in both cyclic total immersion and continuous partial immersion tests. In most cases, tests that involved mirabilite precipitation, however, were more destructive than sheer thenardite tests, regardless of the type of salt supply technique. With the same duration and temperature of the immersion stage, the difference in drying temperature influenced the degree of damage, revealing the damage contribution from thenardite even in the tests with cyclic phase conversion. The reason why mirabilite is generally credited to be more destructive than thenardite and the effect of test duration on the damage potency of thenardite are also discussed.
机译:循环总浸入试验在润湿阶段的芒硝沉淀已被广泛认为是硫酸钠的主要破坏机理。但是,我们假设芒硝的破坏贡献在实验室测试中不能被忽略。为了验证这种假设,通过对三种类型的岩石进行硫酸钠侵蚀进行了一系列的实验室实验。为了明确说明芒硝的效力,除了进行循环全浸没试验外,还在不同的环境条件下进行了连续的部分浸没试验,这使得无论是纯芒硝沉淀还是可逆的芒硝-芒硝转换都可以。尽管岩石破裂仅在沉浸过程中发生,但结果清楚地表明,仅芒硝会在循环总沉浸和连续部分沉浸测试中引起重大破坏。但是,在大多数情况下,无论盐供应技术的类型如何,涉及芒硝沉淀的试验比纯粹的芒硝试验更具破坏性。在浸没阶段的持续时间和温度相同的情况下,干燥温度的差异会影响损伤程度,即使在进行循环相变的测试中,也能揭示芒硝的损伤贡献。还讨论了一般认为芒硝比芒硝更具破坏性的原因,以及测试持续时间对芒硝破坏能力的影响。

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